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交会对接微波雷达近距离高精度测角算法研究
引用本文:严琪,杨瑞强,钟兴旺,王登峰,蔡春贵.交会对接微波雷达近距离高精度测角算法研究[J].宇航学报,2013,34(7):987-992.
作者姓名:严琪  杨瑞强  钟兴旺  王登峰  蔡春贵
作者单位:中国空间技术研究院西安分院,西安 710100
摘    要:近距离测角与远距离测角的主要区别是被测目标位于雷达天线阵近场而非远场,目前的测角算法均基于远场目标假设,在交会对接近距离测角中难以满足精度要求。针对交会对接微波雷达近距离高精度测角问题,提出了一种基于相差复矢量匹配的测角算法。分析了测角信号空间传播几何模型,定义了相差复矢量及表征相差复矢量匹配程度的测角目标函数,建立了求解方位角与俯仰角的非线性规划算法模型,给出了算法的输入条件和执行步骤。仿真结果和微波暗室实测结果验证了该算法的有效性。

关 键 词:交会对接  雷达  近距离  高精度  测角  
收稿时间:2012-09-11

Research on Near-Field High-Accuracy Angle Measurement Algorithm for Rendezvous and Docking Microwave Radar
YAN Qi , YANG Rui-qiang , ZHONG Xing-wang , WANG Deng-feng , CAI Chun-gui.Research on Near-Field High-Accuracy Angle Measurement Algorithm for Rendezvous and Docking Microwave Radar[J].Journal of Astronautics,2013,34(7):987-992.
Authors:YAN Qi  YANG Rui-qiang  ZHONG Xing-wang  WANG Deng-feng  CAI Chun-gui
Institution:China Academy of Space Technology,Xi’an 710100,China
Abstract:The measured target of close range angle measurement is in the near field of radar antenna array while that of long range angle measurement is in the far field. The current angle measurement algorithm based on the assumption of the far field target is hard to satisfy the accuracy requirement in near field angle measurement of space rendezvous and docking. In order to achieve near field high accuracy angle measurement in microwave rendezvous and docking radar, a new algorithm based on phase difference complex vector matching is proposed. A three dimensional geometric model is introduced first. Then, phase difference complex vector is constructed, and a function which quantifies the similarity of phase difference complex vector is defined. Based on the above concepts, a nonlinear programming algorithm model for calculating azimuth and elevation angles is established. In addition, the input parameters and processing steps of the algorithm are described in detail. The simulation results and anechoic chamber experiments results demonstrate the effectiveness of the proposed algorithm.
Keywords:Rendezvous and docking  Radar  Near-field  High-accuracy  Angle measurement
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